ESA INFORMATION DAY ON THE EUROPEAN GNSS EVOLUTION PROGRAMME (EGEP) 2013-15 Warsaw, Poland 11 April 2013 | Slide 1 CONTENT • • EGEP Phase 1 EGEP Phase 2 - 2013-15 • • • • • • EGNOS - Drivers and Roadmap Galileo - Directions and Roadmap Accompanying Activities Results of the ESA Ministerial Conference, Naples, Nov 2012 Overall Workplan 2013-15 EGEP Workplan 2013 - Batch 1 and 2 | Slide 2 EGEP Objectives ESA Optional Programme fully funded by ESA MS in line with the principles and guidelines of the EU/ESA framework agreement Programme Objectives: − − − Enable technical readiness for upgrades and evolution of EGNOS and Galileo caused by mission evolution, operability improvements and/or technology obsolescence Maintain technical European know how, competences and infrastructures at par internationally Sustain competitiveness and innovation capabilities The activities are focusing on infrastructure technology R&D, and system development activities covering Phase A/B | Slide 3 EGEP 2008-12 + Canada • 18 Participating States • Initiated in 2007 • ~ 100 M€ | Slide 4 EGEP Activities 2008-12 2007 2008 2009 2010 2011 2012 2013 Exploratory System Studies (MRS, C-band,..) Future Applications SYSTEM EGNOS V3 Phase A ARAIM System Study Breadboarding (Cs, PHM clocks) SPACE SEGMENT Engineering Models (clocks, IDU,..) Multi-Constellation Receiver Dvpts. GROUND SEGMENT Advanced Ground Antenna Dvpts. Test-Bed Core Platform Developments (SPEED) VERIFICATION VALIDATION Test-Beds Devpt and Operation C-band, S-band Propagation Studies and Interference GNSS SCIENCE Ionosphere Campaign GNSS Science (GNSS-R, AO) and Education TODAY | Slide 5 Achievements 2008-12 • • Definition of a Multi-Constellation Regional System (MRS) concept used as a basis for EGNOS V3 • Identification of possible trends for a future architecture of Galileo – Separation of navigation signal chains to improve flexibility – Inter-satellite link based architecture to reduce dependence from ground segment and to improve autonomy – Improvement of robustness of system elements – Use of new frequency bands New atomic clock technology line initiated: optically-pumped Cs clock − RAFS - Cs - PHM Industrial diversity • Concept P/L Self-Equalization unit • Development of future multi-constellation sensor stations initiated • RIMS core receiver technology • Advanced antenna developments • Core technology of up-link station for future EGNOS V3 • SPEED and testbeds | Slide 6 CONTENT • • EGEP Phase 1 EGEP Phase 2 - 2013-15 • • • • • • EGNOS - Drivers and Roadmap Galileo - Directions and Roadmap Accompanying Activities Results of the ESA Ministerial Conference, Naples, Nov 2012 Overall Workplan 2013-15 EGEP Workplan 2013 - Batch 1 and 2 | Slide 7 PROGRAMMATIC CONTEXT For what regards the preparatory activities for EGNOS: Preparation of the preliminary design and technology for EGNOS V3 with the following objectives: • Ensure provision of the single frequency service after the announced discontinuation in 2020 of the guaranteed codeless use of GPS L2P(Y) signal after 2020. • Introduce new Safety-of-Life (SoL) service based upon a multi-frequency and multiconstellation mode. For what regards the preparatory activities for Galileo: Prepare the definition and technology for a 2nd generation of Galileo (Galileo 2G) responding to the needs for evolutions identified in coordination with the EC and the various stakeholders, consistent with the Galileo Mission Evolution Roadmap and ready in time for the replenishment of the Galileo constellation . For what regards GNSS in general: • Sustain, evolve and broaden the GNSS-related technological know-how in Europe. | Slide 8 EGNOS V2-V3 OVERALL ROADMAP Service evolution milestone (WAAS or EGNOS). Major Milestone (PDR, CDR, QR, draft standard, consolidated standard). Activities supporting the production of international standards (SARPS, MOPS) and of associated avionics. EGEP Activities related to EGNOS V3 Upgrade Ground Segment to GPS/Galileo improves current EGNOS L1 service APV-I Coverage Performance for EGNOS GPS L1 users Current Performance Future Performance: GPS+Galileo G/S 70 60 60 50 50 > 99.9% > 99.5% > 99.5% > 99% Latitude (deg) Latitude (deg) > 95% 40 > 90% 40 > 85% 30 30 20 20 > 75% > 50% Availability for HAL:40 VAL:50 MinDOC:3 MinIPP:2 PullInRadIPP:400km 70 > 99.9% > 99% > 95% > 90% > 85% > 75% > 50% < 50% -40 -30 -20 -10 0 10 Longitude (deg) 20 30 40 50 10 -40 -30 < 50% -20 -10 0 10 Longitude (deg) 20 30 40 50 Availability for HAL:40 VAL:50 MinDOC:3 MinIPP:2 PullInRadIPP:400km 80 80 LPV-200 L1/L5 GPS Only L1/L5 Service / 24GPS Satellites / GEOs set to monitored / RIMS Elevation Mask 15deg / MT28 Implemented Timestep 300s / Duration 1 day / Gridsize 2.5x2.5deg 90 > 99.9% 60 > 99% 30 Latitude (deg) > 95% 0 > 90% > 85% -30 > 75% -60 > 50% < 50% -90 -180 -120 -60 0 Longitude (deg) 60 120 180 Availability for HAL:40m VAL:35m MinDOC:5 MinIPP:3 PullInRadIPP:500km > 99.5% LPV-200 L1/L5 GPS+Galileo Complete Coverage of Africa L1/L5 Service / 24GPS+27GAL Satellites / GEOs set to monitored / RIMS Elevation Mask 15deg / MT28 Implemented Timestep 300s / Duration 1 day / Gridsize 2.5x2.5deg 90 > 99.9% 60 > 99% 30 Latitude (deg) > 95% 0 > 90% > 85% -30 > 75% -60 > 50% < 50% -90 -180 -120 -60 0 Longitude (deg) 60 120 180 Availability for HAL:40m VAL:35m MinDOC:5 MinIPP:5 PullInRadIPP:500km > 99.5% LPV-200 L1/L5 GPS+Galileo MultiRegional L1/L5 Service / 24 GPS + 27 GAL Satellites / GEOs set to monitored / RIMS Elevation Mask 15deg / MT28 Implemented Timestep 300s / Duration 1 Day / Grid 2.5 x 2.5 deg 90 > 99.9% 60 > 99% 30 Latitude (deg) > 95% 0 > 90% > 85% -30 > 75% -60 > 50% < 50% -90 -180 -120 -60 0 Longitude (deg) 60 120 180 Availability for HAL:40m VAL:35m MinDOC:5 > 99.5% CONTENT • • EGEP Phase 1 EGEP Phase 2 - 2013-15 • • • • • • EGNOS - Drivers and Roadmap Galileo - Directions and Roadmap Accompanying Activities Results of the ESA Ministerial Conference, Naples, Nov 2012 Overall Workplan 2013-15 EGEP Workplan 2013 - Batch 1 and 2 | Slide 15 Galileo Drivers • Drivers stemming from the envisage evolution of the current Mission: o Non-compliance with baseline mission requirements; an example being the decision to stop the implementation of the originally foreseen Galileo Safety of Life (SoL) service. o Emerging new mission requirements, such as improvement of the PRS service. • Drivers stemming from bottom-up system level considerations: o System design-to-cost optimization (incl. technology improvement). o Management of obsolescence. o Risk mitigation. | Slide 16 GALILEO DIRECTIONS 1 Horizontal Directions 1. Cost Efficiency of the Galileo System Space Segment Directions 2. Replenishment Flexibility and Introduction of new Platform Capabilities 3. Guarantee availability of diversified and independent European GNSS technologies 4. Allow (early) introduction of new Services Ground System Directions 5. Reduce dependence from Ground Segment | Slide 17 GALILEO DIRECTIONS 2 Frequencies, Signals and Services Directions 6. Increase Robustness and Operational Capabilities of the Galileo Public Regulated Service (PRS 7. Mitigate Vulnerability of Galileo (and GNSS) Signals to Interference 8. Increase Service Performance in Comparison with other GNSS 9. Increase Utilization of Galileo with Respect to Integrity Applications | Slide 18 PRIORITY OF DIRECTIONS High priority directions: 1. Cost benefit of Galileo system. 2. Replenishment flexibility and introduction of new platform capabilities. 3. Guarantee the availability of diversified and independent European GNSS technologies. 4. Reduce dependence from ground segment. 5. Increase Robustness and Operational Capabilities of the PRS. Medium priority directions: 6. Mitigate vulnerability of Galileo (and GNSS) signals to interference. 7. Increase service performance in comparison with other GNSS. Low priority directions: 8. Increase utilization of Galileo with Respect to Integrity Applications. 9. Allow introduction of new services. | Slide 19 POSSIBLE GALILEO 2G IMPLEMENTATION | Slide 20 CONTENT • • EGEP Phase 1 EGEP Phase 2 - 2013-15 • • • • • • EGNOS - Drivers and Roadmap Galileo - Directions and Roadmap Accompanying Activities Results of the ESA Ministerial Conference, Naples, Nov 2012 Overall Workplan 2013-15 EGEP Workplan 2013 - Batch 1 and 2 | Slide 21 Accompanying Activities • Testbeds • Tools and Complementary Activities to support the Executive preparing the future GNSS. • • System tools. • Complementary activities. • Common Ground Technology. System Support Services. Ad hoc support to the Executive in its system level activities. | Slide 22 CONTENT • • EGEP Phase 1 EGEP Phase 2 - 2013-15 • • • • • • EGNOS - Drivers and Roadmap Galileo - Directions and Roadmap Accompanying Activities Results of the ESA Ministerial Conference, Naples, Nov 2012 Overall Workplan 2013-15 EGEP Workplan 2013 - Batch 1 and 2 | Slide 23 EGEP SUBSCRIPTION AT CM 2012 Participants Austria Belgium Czech Republic Denmark Finland France Germany Greece Ireland Italy Netherlands Norway Poland Portugal Romania Spain Sweden Switzerland United kingdom Canada Covered Uncovered TOTAL Financial Contribution Decl. rev.8 M€ 2006 e.c. 2.623 4.120 0.480 2.800 0.613 22.862 16.378 0.653 0.630 15.037 1.763 4.858 0.000 1.940 0.000 9.750 2.050 5.820 5.852 1.601 99.830 5.170 105.000 Financial Financial Contribution Contribution Extension M€ Decl. rev.9 M€ 2006 e.c. 2012 e.c. 2006 e.c. 2.136 2.4 4.759 1.335 1.5 5.455 0.445 0.5 0.925 0.000 0.0 2.800 0.721 0.8 1.334 21.700 24.4 44.562 26.700 30.0 43.078 0.000 0.0 0.653 0.000 0.0 0.630 14.418 16.2 29.455 0.000 0.0 1.763 3.605 4.1 8.463 3.338 3.8 3.338 0.668 0.8 2.608 2.670 3.0 2.670 0.000 0.0 9.750 0.000 0.0 2.050 4.450 5.0 10.270 22.610 25.4 28.462 0.000 0.0 1.601 104.796 117.8 204.626 28.704 32.2 33.874 133.500 150.0 238.500 | Slide 24 EGEP SUBSCRIPTION AT CM 2012 MAIN HIGHLIGHTS • Subscriptions for 2013-15: 117.8 M€ • No contributions from Denmark, Greece, Ireland, Netherlands, Spain, Sweden, Canada • Contributions from new MS (ROM and POL) Overall: • Level of subscription is a very positive support from MS to the EGEP programme, allowing to reach the main goals of the programme However: • Workplan had to be adapted to the subscribed financial envelope (150 M€ > 117.8 M€) • Specific situation of Spanish contribution (EGNOS) | Slide 25 EGEP 2013-15 + Canada • 18+2 Participating States • ~ 118 M€ • Activities related to EGNOS & Galileo • Only R+T necessary to it | Slide 26 CONTENT • • EGEP Phase 1 EGEP Phase 2 - 2013-15 • • • • • • EGNOS - Drivers and Roadmap Galileo - Directions and Roadmap Accompanying Activities Results of the ESA Ministerial Conference, Naples, Nov 2012 Overall Workplan 2013-15 EGEP Workplan 2013 - Batch 1 and 2 | Slide 27 2013-15 EGEP Work Plan - 1 Proposed Activities for the 2013-15 Extension of the EGEP (Cost in M€) system studies EGNOS v3 technology developments complementary activities EGNOS v3 Total IPC ID ID Title 60.01/ 60.02 2010 [2x] EGNOS v3 B2 system study 62 2065 Support to standardization 63.01/ 63.02 2050 64 2060 66 2090 [2x] RIMS v3 prototype Modernised EGNOS user receiver prototype Ionosphere characterisation CM 117.8 M€ Grand Total 23.0 2013 Remarks 2014 2015 23.0 0.5 0.5 Standardization efforts are essential for EGNOS V3 9.0 9.0 2 x 4.5 M€ 1.5 1.5 1.0 0.5 0.5 35.0 33.0 2.0 | Slide 28 2013-15 EGEP Work Plan - 2 Proposed Activities for the 2013-15 Extension of the EGEP (Cost in M€) IPC ID system studies phase A/B1 satellite study Galileo 2G low TRL techno preparation payload predevelopments Galileo 2G Total ID Title Enhancements of orbit determination and time synchronization PRS signal robustness CM 117.8 M€ Grand Total 2013 0.4 0.4 1.0 1.0 16.0 16.0 Remarks 2014 68 200 70 930 71.01/ 71.02 170 [3x] Galileo 2G satellite detailed design 72.01/ 72.02 180 Direct L-band signal generation 3.6 3.6 73 450 On-board clock ensemble CMCU (ONCLE CMCU) 1.8 1.8 74 660 1.0 1.0 76.01/ 76.02/ 76.03 570 3.6 3.6 95 210+ 1080 Space clock 2nd supplier (Cs) [3x] Electrical propulsion thruster operational characterization and industrialization Galileo 2G Links 0.5 0.5 96 460 Robust RAFS 0.9 80 470 81 720 Miniaturised low-maintenance PHM ISL predevelopment (EM) 2015 CLASSIFIED Contractual 2 phases: A+B1 Only 1 contract - 0.9 1.8 1.8 8.0 4.0 4.0 38.6 25.5 13.1 | Slide 29 2013-15 EGEP Work Plan - 3 Proposed Activities for the 2013-15 Extension of the EGEP (Cost in M€) ID High-Integrity System Test-Bed New integrity concept 2110 for dual-frequency SBAS 2130 ARAIM test-bed 2100 Test-beds Test-beds Total Title CM 117.8 M€ Grand Total 2013 Remarks 2014 2015 1.4 0.7 0.7 2.2 1.1 1.1 1.5 5.1 1.5 1.8 3.3 | Slide 30 2013-15 EGEP Work Plan - 4 Proposed Activities for the 2013-15 Extension of the EGEP (Cost in M€) IPC ID Tools and complementary ID Title system tools 87 90 complementary activities 89 1010 common ground technology 90 690 Tools and complementary Total NG signal demonstrator GNSS technology and science announcement of opportunity Ground Cs clock development CM 117.8 M€ Grand Total 2013 1.5 Remarks 2014 2015 1.5 6.0 3.0 1.4 1.4 8.9 4.4 3.0 Increased, possibility for new MS 4.5 | Slide 31 2013-15 EGEP Work Plan - 5 Proposed Activities for the 2013-15 Extension of the EGEP (Cost in M€) ID IPC ID System support services System support services Total 97 Title 2180+2190 Internal cost Internal cost Total Grand Total System support services Proposed Activities for the 2013-15 Extension of the EGEP (Cost in M€) ID CM 117.8 M€ Title 2150 Internal cost Remarks 2013 2014 5.0 2.5 2.5 5.0 2.5 2.5 201 5 CM 117.8 M€ Grand Total 24.0 24.0 Remarks 2013 2014 8.0 8.0 8.0 8.0 201 5 8.0 8.0 | Slide 32 2013-15 EGEP Work Plan – 6 (Cost summary) Proposed Activities for the 2013-15 Extension of the EGEP (Cost in M€) EGNOS v3 Total Galileo 2G Total Test-beds Total Tools and complementary Total Internal cost Total Support services Total Management reserve Grand Total CM 117.8 M€ Grand Total 35.0 38.6 5.1 Remarks 2013 2014 33.0 25.5 1.8 2.0 13.1 3.3 8.9 4.4 4.5 24.0 5.0 8.0 2.5 8.0 2.5 1.2 117.8 0.6 75.8 0.6 34.0 2015 8.0 8.0 | Slide 33 IMPACT ON DRAFT WORKING PLAN 2013-15 • Total amount of 117.8 M€ allows the Executive to reach the main goals of EGEP Extension: EGNOS EGNOS V3 Phase B2 RIMS V3 Prototype Continuation of main EGNOS testbeds Galileo Galileo 2G system level work Galileo 2G Satellite Study Phase A/B1 Electrical Propulsion Validation for Galileo Inter-Satellite Links Pre-development Further Technology Development of Key Equipment (incl. clocks) | Slide 34 CONTENT • • EGEP Phase 1 EGEP Phase 2 - 2013-15 • • • • • • EGNOS - Drivers and Roadmap Galileo - Directions and Roadmap Accompanying Activities Results of the ESA Ministerial Conference, Naples, Nov 2012 Overall Workplan 2013-15 EGEP Workplan 2013 - Batch 1 and 2 | Slide 35 WORKPLAN 2013 Batch 1+2 In order not to delay the procurement of the most urgent activities Workplan 2013 Batch 1 was already submitted at the PBNAV on 29./30. Nov. 2012 for approval IPC approved end of Jan 2013 ITT’s are planned for April-June 2013 PROCESS (1) Target contracts signature: Early summer 2013 Workplan 2013 Batch 2 is presently in the AC/IPC approval loop | Slide 36 BATCH 1 Activities of Workplan 2013 2013 EGEP Workplan, revision 1 Batch 1 M€ 93.01/93.02 23.00 Support to Standardisation 62 0.50 RIMS V3 Prototype Development 63 9.00 Ionosphere Characterisation 66 1.00 EGNOS V3 System Study (B2) EGNOS Related ID Total Galileo Related 33.50 Galileo 2G Phase A/B1 Satellite Study 71 16.00 Electric Propulsion subsystem Industrialisation and Thruster operational characterisation (NOTE: This budget covers up to 3 parallel contracts. Additional 1.2 M€ will be kept as mgmt. reserve in case the TEB receives 4 excellent proposals (ref. IPC decision) 76 3.60 Inter Satellite Link (ISL) Pre-development 81 8.00 Total 27.60 Batch 1 Total 61.10 | Slide 37 BATCH 2 Activities of Workplan 2013 2013 EGEP Workplan, revision 1 Batch 2 High Integrity System Testbed EGNOS Related New Integrity Concept for Dual-frequency SBAS ID 82 M€ 1.40 83 2.20 Total Enhancement of Orbit Determination and time synchronisation PRS Signal Robustness Galileo GNSS Technology & Science Announcement Related of Opportunity Ground Cs Clock Development Galileo 2G Links System Support Services 3.60 68 0.40 70 1.00 89 6.00 90 95 97 1.40 0.50 5.00 14.30 17.90 Total Batch 2 Total | Slide 38
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